Department of Medical, Oral and Biotechnological Sciences, University "G. d'Annunzio" Chieti-Pescara, 66100 Chieti, Italy.
IRCCS Centro Neurolesi "Bonino Pulejo", 98124 Messina, Italy.
Int J Mol Sci. 2018 Jan 23;19(2):329. doi: 10.3390/ijms19020329.
Bone tissue engineering is one of the main branches of regenerative medicine. In this field, the use of a scaffold, which supported bone development, in combination with mesenchymal stem cells (MSCs), has promised better outcomes for bone regeneration. In particular, human gingival mesenchymal stem cells (hGMSCs) may present advantages compared to other MSCs, including the easier isolation. However, MSCs' secretome has attracted much attention for its potential use in tissue regeneration, such as conditioned medium (CM) that contains different soluble factors proved to be useful for the regenerative purposes. In this study, we evaluated the osteogenic capacity of a poly-(lactide) (3D-PLA) scaffold enriched with hGMSCs and hGMSCs derived CM and its ability to regenerate bone defects in rat calvarias. 3D-PLA alone, 3D-PLA + CM or 3D-PLA + hGMSCs with/without CM were implanted in Wistar male rats subjected to calvarial defects. We observed that 3D-PLA scaffold enriched with hGMSCs and CM showed a better osteogenic capacity, being able to repair the calvarial defect as revealed in vivo by morphological evaluation. Moreover, transcriptomic analysis in vitro revealed the upregulation of genes involved in ossification and regulation of ossification in the 3D-PLA + CM + hGMSCs group. All of these results indicate the great osteogenic ability of 3D-PLA + CM + hGMSCs supporting its use in bone regenerative medicine, in particular in the repair of cranial bone defects. Especially, hGMSCs derived CM played a key role in the induction of the osteogenic process and in bone regeneration.
骨组织工程是再生医学的主要分支之一。在该领域,使用支架(支持骨发育)与间充质干细胞(MSCs)结合,有望改善骨再生的效果。特别是,与其他 MSCs 相比,人牙龈间充质干细胞(hGMSCs)可能具有优势,包括更容易分离。然而,MSCs 的分泌组因其在组织再生中的潜在用途而引起了广泛关注,例如含有不同可溶性因子的条件培养基(CM),已被证明对再生目的有用。在这项研究中,我们评估了富含 hGMSCs 和 hGMSCs 衍生 CM 的聚(乳酸)(3D-PLA)支架的成骨能力及其在大鼠颅骨骨缺损中的再生能力。单独的 3D-PLA、3D-PLA+CM 或 3D-PLA+hGMSCs+/-CM 被植入接受颅骨缺损的 Wistar 雄性大鼠中。我们观察到,富含 hGMSCs 和 CM 的 3D-PLA 支架显示出更好的成骨能力,能够通过体内形态评估修复颅骨缺损。此外,体外转录组分析显示,3D-PLA+CM+hGMSCs 组中涉及骨化和骨化调节的基因上调。所有这些结果表明 3D-PLA+CM+hGMSCs 具有强大的成骨能力,支持其在骨再生医学中的应用,特别是在修复颅骨骨缺损方面。特别是,hGMSCs 衍生的 CM 在诱导成骨过程和骨再生中发挥了关键作用。